Romero Gabriela, Contreras Lellys M, Aguirre Céspedes Carolina, Wilkesman Jeff, Clemente-Jiménez Josefa María, Rodríguez-Vico Felipe, Las Heras-Vázquez Francisco Javier
Center for Environmental, Biological and Chemical Research, Experimental Faculty of Sciences and Technology, University of Carabobo, Valencia 2001, Venezuela.
Department of Basic Sciences, School of Bioanalysis, Faculty of Health Sciences, University of Carabobo, Naguanagua 2005, Venezuela.
Polymers (Basel). 2023 Jul 26;15(15):3170. doi: 10.3390/polym15153170.
The Y509E mutant of β-xylosidase from (XynB2) (which also bears xylanase activity) has been immobilized in chitosan spheres through either entrapment or covalent bond formation methods. The maximum immobilization yield by entrapment was achieved by chitosan beads developed using a 2% chitosan solution after 1 h of maturation time in CFG buffer with ethanol. On the other hand, the highest value in covalent bond immobilization was observed when employing chitosan beads that were prepared from a 2% chitosan solution after 4 h of activation in 1% glutaraldehyde solution at pH 8. The activity expressed after immobilization by covalent bonding was 23% higher compared to the activity expressed following entrapment immobilization, with values of 122.3 and 99.4 IU.g, respectively. Kinetic data revealed that catalytic turnover values were decreased as compared to a free counterpart. Both biocatalysts showed increased thermal and pH stability, along with an improved storage capacity, as they retained 88% and 40% of their activity after being stored at 4 °C for two months. Moreover, XynB2 immobilized by covalent binding also exhibited outstanding reusability, retaining 92% of activity after 10 cycles of reuse. In conclusion, our results suggest that the covalent bond method appears to be the best choice for XynB2 immobilization.
来源于[具体来源未提及]的β-木糖苷酶(XynB2,也具有木聚糖酶活性)的Y509E突变体已通过包埋或共价键形成方法固定在壳聚糖球中。通过在含有乙醇的CFG缓冲液中成熟1小时后,使用2%壳聚糖溶液制备的壳聚糖珠实现了包埋法的最大固定化产率。另一方面,当使用在pH 8的1%戊二醛溶液中活化4小时后由2%壳聚糖溶液制备的壳聚糖珠时,观察到共价键固定化的最高值。与包埋固定化后表达的活性相比,共价键固定化后表达的活性高23%,分别为122.3和99.4 IU.g。动力学数据表明,与游离对应物相比,催化周转值降低。两种生物催化剂均表现出更高的热稳定性和pH稳定性,以及更好的储存能力,因为它们在4℃储存两个月后仍保留88%和40%的活性。此外,通过共价结合固定的XynB2还表现出出色的可重复使用性,在重复使用10次后仍保留92%的活性。总之,我们的结果表明,共价键方法似乎是XynB2固定化的最佳选择。